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香烟导致的内皮型一氧化氮合酶的时间依赖性抑制和四氢生物蝶呤耗竭。

Time-dependent inhibition and tetrahydrobiopterin depletion of endothelial nitric-oxide synthase caused by cigarettes.

作者信息

Lowe Ezra R, Everett Andrew C, Lee Anthony J, Lau Miranda, Dunbar Anwar Y, Berka Vladimir, Tsai Ah-Lim, Osawa Yoichi

机构信息

Department of Pharmacology, University of Michigan Medical School, 1301 Medical Science Research Building III, Ann Arbor, MI 48109-0632, USA.

出版信息

Drug Metab Dispos. 2005 Jan;33(1):131-8. doi: 10.1124/dmd.104.001891. Epub 2004 Oct 6.

Abstract

Smoking causes a dysfunction in endothelial nitric-oxide synthase (eNOS), which is ameliorated, in part, by administration of tetrahydrobiopterin (BH(4)). The exact mechanism by which the nitric oxide deficit occurs is unknown. We have previously shown that aqueous extracts of chemicals in cigarettes (CE) cause the suicide inactivation of neuronal NO synthase (nNOS) by interacting at the substrate-binding site. In the current study, we have found that CE directly inactivates eNOS by a process that is not affected by the natural substrate l-arginine and is distinct from the mechanism of inactivation of nNOS. We discovered that CE causes a time-, concentration-, and NADPH-dependent inactivation of eNOS in an in vitro system containing the purified enzyme, indicating a metabolic component to the inactivation. The CE-treated eNOS but not nNOS was nearly fully reactivated upon incubation with excess BH(4), suggesting that BH(4) depletion is a potential mechanism of inactivation. Moreover, in the presence of CE, eNOS catalyzed the oxidation of BH(4) to dihydrobiopterin and biopterin by a process attenuated by high concentrations of superoxide dismutase but not catalase. We speculate that a redox active component in CE, perhaps a quinone compound, causes oxidative uncoupling of eNOS to form superoxide, which in turn oxidizes BH(4). The discovery of a direct inactivation of eNOS by a compound(s) present in tobacco provides a basis not only for further study of the mechanisms responsible for the biological effects of tobacco but also a search for a potentially novel inactivator of eNOS.

摘要

吸烟会导致内皮型一氧化氮合酶(eNOS)功能障碍,而给予四氢生物蝶呤(BH4)可部分改善这种情况。一氧化氮缺乏的确切发生机制尚不清楚。我们之前已经表明,香烟中的化学物质水提取物(CE)通过在底物结合位点相互作用导致神经元型一氧化氮合酶(nNOS)自杀性失活。在当前研究中,我们发现CE通过一种不受天然底物L-精氨酸影响且不同于nNOS失活机制的过程直接使eNOS失活。我们发现,在含有纯化酶的体外系统中,CE导致eNOS出现时间、浓度和NADPH依赖性失活,表明失活过程中有代谢成分参与。用过量的BH4孵育后,经CE处理的eNOS而非nNOS几乎完全重新激活,这表明BH4耗竭是一种潜在的失活机制。此外,在CE存在的情况下,eNOS通过一个被高浓度超氧化物歧化酶而非过氧化氢酶减弱的过程将BH4氧化为二氢生物蝶呤和生物蝶呤。我们推测,CE中的一种氧化还原活性成分,可能是一种醌类化合物,导致eNOS发生氧化解偶联以形成超氧化物,进而氧化BH4。烟草中存在的一种化合物直接使eNOS失活这一发现,不仅为进一步研究烟草生物效应的机制提供了基础,也为寻找一种潜在的新型eNOS失活剂提供了依据。

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